G4PSPassageCellFluxForCylinder3D.hh

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00027 // $Id$
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00030 
00031 #ifndef G4PSPassageCellFluxForCylinder3D_h
00032 #define G4PSPassageCellFluxForCylinder3D_h 1
00033 
00034 #include "G4PSPassageCellFlux3D.hh"
00036 // (Description)
00037 //   This is a primitive scorer class for scoring cell flux.
00038 //   The Cell Flux is defined by  a track length divided by a geometry
00039 //   volume, where only tracks passing through the geometry are taken
00040 //  into account. e.g. the unit of Cell Flux is mm/mm3.
00041 //
00042 //   If you want to score all tracks in the geometry volume,
00043 //  please use G4PSCellFlux.
00044 //
00045 // Created: 2007-08-14  Tsukasa ASO
00046 // 2010-07-22   Introduce Unit specification.
00047 // 2011-03-24   Give Size and Segmentation for relicated volume in cylinder.
00049 
00050 
00051 class G4PSPassageCellFluxForCylinder3D : public G4PSPassageCellFlux3D
00052 {
00053    public: // with description
00054       G4PSPassageCellFluxForCylinder3D(G4String name,
00055                             G4int ni=1,G4int nj=1, G4int nk=1,
00056                             G4int depi=2, G4int depj=1, G4int depk=0);
00057       G4PSPassageCellFluxForCylinder3D(G4String name,const G4String& unit,
00058                             G4int ni=1,G4int nj=1, G4int nk=1,
00059                             G4int depi=2, G4int depj=1, G4int depk=0);
00060       virtual ~G4PSPassageCellFluxForCylinder3D();
00061 
00062       void SetCylinderSize(G4double dr, G4double dz);
00063       void SetNumberOfSegments(G4int nSeg[3]);
00064 
00065   protected: // with description
00066       virtual G4double ComputeVolume(G4Step*, G4int idx);
00067 
00068   private:
00069   // Order of segmentation (Z PHI R) in CylinderMesh
00070    G4ThreeVector cylinderSize;  
00071    G4int nSegment[3];
00072 
00073 };
00074 #endif
00075 

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